SYN THE SIS OF FLUORAPATITE NANOPOWDERS BY A SURFACTANT-AS SISTED MI CRO WAVE METHOD UN DER ISOTHERMAL CONDITIONS

dc.citation.epage187
dc.citation.spage180
dc.citation.volume33
dc.contributor.authorSTANIĆ, Vojislav Dj.
dc.contributor.authorADNADJEVIĆ, Borivoj K.
dc.contributor.authorDIMITRIJEVIĆ, Suzana I.
dc.contributor.authorDIMOVIĆ, Slavko D.
dc.contributor.authorMITRIĆ, Miodrag N.
dc.contributor.authorZMEJKOVSKI, Bojana B.
dc.contributor.authorSMILJANIĆ, Slavko
dc.date.accessioned2023-07-20T10:18:19Z
dc.date.available2023-07-20T10:18:19Z
dc.date.issued2018
dc.description.abstractFluorapatite nanopowders with different amounts of fluoride ions were prepared using the surfactant-assisted microwave method under isothermal conditions. Microwave irradiation was applied for the rapid formation of crystals. A micellar solution of polyoxyethylene (23) lauryl ether was used as a regulator of nucleation and crystal growth. Characterization studies from X-ray diffraction, field-emission scaning electron microscopy and Fourier-transform infrared spectra showed that crystals have an apatite structure and particles of all samples are nano size, with an average length of 50 nm and about 15-25 nm in diameter. Antimicrobial studies have demonstrated that synthesized fluorapatite nanopowders exhibit activity against tested pathogens: Escherichia coli, Staphylococcus aureus and Candida albicans. Activity increased with the amount of fluoride ions. The synthesized fluorapatite nanomaterials are promising as materials in environmental protection and medicine for orthopedics and dental restorations
dc.identifier.doi10.2298/NTRP1802180S
dc.identifier.urihttps://vaseljena.ues.rs.ba/handle/123456789/505
dc.language.isoen
dc.publisherVinča Institute of Nuclear Sciences
dc.sourceNuclear Technology & Radiation Protection
dc.subjectfluorapatite, mi cro wave pro cess ing, nanopowder, en vi ron men tal pro tec tion
dc.titleSYN THE SIS OF FLUORAPATITE NANOPOWDERS BY A SURFACTANT-AS SISTED MI CRO WAVE METHOD UN DER ISOTHERMAL CONDITIONS
dc.typeArticle
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